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Reconstitution of the U1 small nuclear ribonucleoprotein particle.

机译:重建U1小核糖核蛋白颗粒。

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摘要

Although the U1 small nuclear ribonucleoprotein particle (snRNP) was the first mRNA-splicing cofactor to be identified, the manner in which it functions in splicing is not precisely understood. Among the information required to understand how U1 snRNP participates in splicing, it will be necessary to know its structure. Here we describe the in vitro reconstitution of a particle that possesses the properties of native U1 snRNP. 32P-labeled U1 RNA was transcribed from an SP6 promoter-human U1 gene clone and incubated in a HeLa S100 fraction. A U1 particle formed which displayed the same sedimentation coefficient (approximately 10S) and buoyant density (1.40 g/cm3) as native U1 snRNP. The latter value reflects the ability to withstand isopycnic banding in Cs2SO4 without prior fixation, a property shared by native U1 snRNP. The reconstituted U1 particle reacted with both the Sm and RNP monoclonal antibodies, showing that these two classes of snRNP proteins were present. Moreover, the reconstituted U1 snRNP particle was found to display the characteristic Mg2+ switch of nuclease sensitivity previously described for native U1 snRNP: an open, nuclease-sensitive conformation at a low Mg2+ concentration (3 mM) and a more compact, nuclease-resistant organization at a higher concentration (15 mM). The majority of the U1 RNA in the reconstituted particle did not contain hypermethylated caps, pseudouridine, or ribose 2-O-methylation, showing that these enigmatic posttranscriptional modifications are not essential for reconstitution of the U1 snRNP particle. The extreme 3' end (18 nucleotides) of U1 RNA was required for reconstitution, but loop II (nucleotides 64 to 77) was not. Interestingly, the 5' end (15 nucleotides) of U1 RNA that recognizes pre-mRNA 5' splice sites was not required for U1 snRNP reconstruction.
机译:尽管U1小核糖核蛋白小颗粒(snRNP)是第一个被鉴定的mRNA剪接辅因子,但其在剪接中的功能方式尚不清楚。在了解U1 snRNP如何参与剪接所需的信息中,有必要知道其结构。在这里,我们描述了具有天然U1 snRNP特性的颗粒的体外重建。从SP6启动子-人U1基因克隆中转录32P标记的U1 RNA,并在HeLa S100组分中孵育。形成的U1颗粒具有与天然U1 snRNP相同的沉降系数(约10S)和浮力密度(1.40 g / cm3)。后者的值反映了无需事先固定即可承受Cs2SO4中等密度带的能力,这是天然U1 snRNP共有的特性。重建的U1颗粒与Sm和RNP单克隆抗体均反应,表明存在这两类snRNP蛋白。此外,发现重构的U1 snRNP颗粒显示出先前针对天然U1 snRNP所描述的核酸酶敏感性的特征性Mg2 +开关:低Mg2 +浓度(3 mM)的开放的,对核酸酶敏感的构象和更紧凑的,耐核酸酶的组织浓度较高(15 mM)。重构颗粒中的大部分U1 RNA不包含甲基化帽,假尿苷或核糖2-O-甲基化,这表明这些神秘的转录后修饰对于重构U1 snRNP颗粒不是必需的。重建需要U1 RNA的3'端极端(18个核苷酸),但不需要环II(核苷酸64至77)。有趣的是,U1 snRNP重建不需要识别前mRNA 5'剪接位点的U1 RNA的5'端(15个核苷酸)。

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